Abstract: The magnetic materials might be sub-divided into the three major classes that requires special approaches and has specific problems, but also allowing for specific simplifications. This classes are magnetic insulators, 4f-metals with high degree of the magnetic moment localizations and d-metals and intermetallic compounds and alloys. For the first classes an important role of the correlation effects are evident, but quantum Heisenberg model with some modifications provide robust description of the finite temperature magnetic properties. The class of the d-metallic...
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Seminars and workshops of department 23
Seminář / Tuesday, 11.12.2018 15:00
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Past seminars and workshops
František Máca | Defects and magnetic structure of CuMnSb | 04.04.2017 15:00 |
Libor Šmejkal | Topological antiferromagnetic spintronics | 28.02.2017 15:00 |
Evgeny Gorelov | Spectroscopy of strongly correlated materials: cluster approach | 17.01.2017 15:00 |
Petr Pokorný | Zjevně je něco v nepořádku. Byly doby ledové bezlesé, nebo lesnaté? | 20.12.2016 15:00 |
1st Joint Czech-Israeli Workshop Strong electron correlations in nano-materials for advanced energy applications | 28.11.2016 | |
Tomáš Rauch | Topological properties of zincblende materials | 08.11.2016 15:00 |
Jan Rusz | Inelastic electron scattering on magnetic materials – towards atomic resolution measurements of magnetism | 01.11.2016 15:00 |
Maciej M. Maska | The Kosterlitz-Thouless transition in the phase-fermion model | 25.10.2016 15:00 |
Ipsita Mandal | Aspects of Ising-nematic quantum critical point | 30.09.2016 10:00 |
Ilja Turek | Ab initio theory of Gilbert damping in random ferromagnetic alloys | 20.09.2016 15:00 |
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Department of Condensed Matter Theory (23)
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